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Effect of Al2O3 and TiO2 Contents in the Refining Slag on Al and Ti Contents of Incoloy825 Alloy

Release time:2024-11-22 Hits:

First Author:Wei GONG

Correspondence Author:Zhouhua JIANG

Co author:Rongao ZHOU,Pengfei WANG,Xin GENG

Journal:ISIJ International

Issue:11

Volume:62

DOI number:10.2355/isijinternational.ISIJINT-2022-158

Place of Publication:Japan

Abstract:During the refining process of Incoloy825 nickel-based alloy, the reaction between the refining slag and Al and Ti in the alloy can result in the oxidation loss. Therefore, the effect of the TiO2 and Al2O3 contents in the refining slag (CaO–SiO2–Al2O3–MgO–CaF2–TiO2) on the final Al and Ti contents in Incoloy825 alloy was investigated by slag-metal reaction experiment in a 1-kg MoSi2 resistance furnace. The thermodynamic model was established based on ion and molecular coexistence theory and the kinetic model was established based on two-film theory. The experimental results show that an increase in TiO2 (Al2O3) content in the slag leads to an increase (decrease) in Ti content and a decrease (increase) in Al content in the final alloy. The thermodynamic model demonstrates that the activities of SiO2, Al2O3, and TiO2 in the slag are negatively correlated with the content of CaO and positively correlated with SiO2, Al2O3, and TiO2 in the slag. The kinetic model indicates that the slag-metal reaction reaches equilibrium within 10 min, and the model has good applicability for the reaction process of Incoloy825 alloy and slag refining.

Funded by:Key project of National Natural Science Foundation of China

Key Words:Incoloy825, refining slag, Al2O3, TiO2, thermodynamic, kinetic model

Indexed by:SCI JCR Q3

Discipline:Engineering

Document Type:JCR 三区

First-Level Discipline:Metallurgical Engineering

Page Number:2255–2265

ISSN No.:0915-1559

Translation or Not:no

龚伟

Date of Birth:1975-12-28 Gender:Male Education Level:With Certificate of Graduation for Doctorate Study Alma Mater:东北大学 Degree:博士 Status:Employed Business Address:钢铁楼523B Contact Information:13694196153 E-Mail: